Myocardial Injury Is Distinguished from Stable Angina by a Set of Candidate Plasma Biomarkers Identified Using
Esther Sok Hwee Cheow1, Woo Chin Cheng2, Terence Yap1
1School of Biological Sciences, Nanyang Technological University , 60 Nanyang Drive, Singapore 637551, Singapore.
Insights
Researchers identified eight novel protein biomarkers in human plasma to help distinguish between stable coronary artery disease (CAD) and acute myocardial infarction (MI), improving diagnostic accuracy for heart conditions.
Area of Science:
- Proteomics
- Biomarker Discovery
- Cardiovascular Disease Research
Background:
- Accurate diagnosis of myocardial injury and stable angina is crucial for timely treatment.
- Current diagnostic methods lack precise noninvasive biomarkers for stratifying patients with coronary artery disease (CAD).
Purpose of the Study:
- To identify and validate novel noninvasive plasma biomarkers for differentiating acute myocardial infarction (MI) from stable angina in patients with CAD.
- To develop a diagnostic panel for improved clinical stratification of cardiovascular conditions.
Main Methods:
- Comparative quantitative proteomics (iTRAQ) on whole plasma from patients with stable angina, MI, and healthy controls.
- Label-free LC-MRM-MS targeted assays for verification and validation of candidate biomarkers in individual plasma samples.
Main Results:
- Identified 53 preliminary biomarkers with significantly modulated expression in CAD patients.
- Validated a final panel of eight novel candidate biomarkers significantly modulated in CAD.
- Candidate biomarkers are associated with endothelial dysfunction, plaque destabilization, and tissue repair mechanisms.
Conclusions:
- Novel protein biomarkers can be detected in human plasma using a discovery-validation proteomics approach.
- The identified panel shows potential clinical utility in discriminating atherosclerotic stable angina from myocardial injury.
- Noninvasive biomarkers are crucial for accurate risk stratification and optimal therapy administration in cardiovascular disease.
Abstract:
The lack of precise biomarkers that identify patients at risk for myocardial injury and stable angina delays administration of optimal therapy. Hence, the search for noninvasive biomarkers that could accurately stratify patients with impending heart attack, from patients with stable coronary artery disease (CAD), is urgently needed in the clinic. Herein, we performed comparative quantitative proteomics on whole plasma sampled from patients with stable angina (NMI), acute myocardial infarction (MI), and healthy control subjects (Ctrl). We detected a total of 371 proteins with high confidence (FDR < 1%, p < 0.05) including 53 preliminary biomarkers that displayed ≥2-fold modulated expression in patients with CAD (27 associated with atherosclerotic stable angina, 26 with myocardial injury). In the verification phase, we used label-free LC-MRM-MS-based targeted method to verify the preliminary biomarkers in pooled plasma, excluded peptides that were poorly distinguished from background, and performed further validation of the remaining candidates in 49 individual plasma samples. Using this approach, we identified a final panel of eight novel candidate biomarkers that were significantly modulated in CAD (p < 0.05) including proteins associated with atherosclerotic stable angina that were implicated in endothelial dysfunction (F10 and MST1), proteins associated with myocardial injury reportedly involved in plaque destabilization (SERPINA3, CPN2, LUM), and in tissue protection/repair mechanisms (ORM2, ACTG1, NAGLU). Taken together, our data showed that candidate biomarkers with potential diagnostic values can be successfully detected in nondepleted human plasma using an iTRAQ/MRM-based discovery-validation approach and demonstrated the plausible clinical utility of the proposed panel in discriminating atherosclerotic stable angina from myocardial injury in the studied cohort.
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